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首页> 外文期刊>Journal of Molecular Liquids >Physical properties of deep eutectic solvents formed by the sodium halide salts and ethylene glycol, and their mixtures with water
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Physical properties of deep eutectic solvents formed by the sodium halide salts and ethylene glycol, and their mixtures with water

机译:由卤化钠盐和乙二醇形成的深对共晶溶剂的物理性质及其用水混合物

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摘要

Deep eutectic solvents (DESs), with their attractive properties, are currently of great interest. Introducing new kinds of eutectic solvents with different components as their hydrogen bond donors (HBD) and hydrogen bond acceptors (HBA), and investigating the (thermo-) physical properties of the new DES5 can play an important role in promoting future research and use of such mixtures. In this study, we investigate the feasibility of the formation of new kinds of eutectic solvents based on the sodium halide salts as the hydrogen bond acceptors with ethylene glycol as the hydrogen bond donor. Different molar fractions of HBD/HBA were investigated. The results indicated that sodium fluoride does not form a DES throughout the whole concentration range investigated, while sodium chloride, sodium bromide, and sodium iodide do form eutectic mixtures at certain molar ratios. Differential scanning analysis was performed on the resulting eutectic solvents to measure the glass transition temperature. Other physical properties of the proposed DES5, namely density, viscosity, refractive index, and electric conductivity were also measured within the temperature range of 293-333 K. Furthermore, the effect of water in aqueous mixtures of the proposed DESs was investigated, with molar fractions of water ranging from 0.1 to 0.9. Based on the calculations of excess molar volume, the effect of water in the mixtures was investigated. Over the whole range of water concentrations in the mixture, the excess molar volumes had negative values, indicating intensive hydrogen-bonding between unlike molecules in the mixture and/or a void filling mechanism by the smaller molecules. (C) 2018 Published by Elsevier B.V.
机译:深度共晶溶剂(DESS),具有吸引力的特性,目前是极大的兴趣。引入具有不同组分的新型共晶溶剂作为其氢键供体(HBD)和氢键受体(HBA),并研究新DES5的(热)物理性质可以在促进未来的研究和使用方面发挥重要作用这样的混合物。在这项研究中,我们研究了基于卤化钠盐的形成新的共晶溶剂作为氢乙二醇作为氢键供体的氢键受体的可行性。研究了HBD / HBA的不同摩尔分数。结果表明,氟化钠在整个浓度范围内不形成DES,而氯化钠,溴化钠和碘化钠确实以某种摩尔比形成共晶混合物。对所得共晶溶剂进行差扫描分析以测量玻璃化转变温度。还在293-333k的温度范围内测量所提出的DES5,即密度,粘度,折射率和导电性的其他物理性质。此外,研究了水在所提出的DES的水性混合物中的影响,用摩尔水分为0.1至0.9。基于对多余摩尔体积的计算,研究了水在混合物中的影响。在混合物中的整个水浓度范围内,过量的摩尔体积具有负值,表明在混合物中的分子和/或通过较小分子的空隙填充机构之间的强化氢键合。 (c)2018由elestvier b.v出版。

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